Liquid cooling IT shelter and data center

By connecting the skid-mounted units of the liquid-cooled IT cabin to the building walls and columns, the problem of damage to the floor waterproofing layer caused by traditional fixing methods is solved, achieving stable connection and waterproofing effect, reducing the risk of water leakage, and improving the maintenance convenience of the computer room.

CN224244516UActive Publication Date: 2026-05-15SHENZHEN YAODE DATA SERVICES CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN YAODE DATA SERVICES CO LTD
Filing Date
2025-04-17
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Traditional liquid-cooled IT server room mounting methods can easily damage the floor's waterproof layer, leading to water leakage risks and affecting the server room's safety and maintenance.

Method used

The liquid-cooled IT container is used, and it is connected to the building walls and columns through skid-mounted units to avoid direct fixation to the floor slab. The first connecting frame is connected to the building walls, and the second connecting frame is connected to the building columns to form a stable steel structure frame, ensuring connection stability and the integrity of the waterproof layer.

Benefits of technology

This reduces the risk of damage to the floor waterproofing layer, eliminates the possibility of water leakage in the liquid-cooled computer room, and improves the convenience of maintenance and repair of the computer room.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a liquid cooling IT shelter and a data center, and belongs to the technical field of data centers. The liquid cooling IT square cabin is used for being installed in an IT machine room, the liquid cooling IT square cabin comprises a square cabin body, a first connecting frame, a second connecting frame and a first fastener, the square cabin body comprises a skid unit, a machine cabinet and a cooling liquid distribution unit, the skid unit comprises a plurality of skid blocks which are connected with one another, and the skid blocks are used for supporting the machine cabinet and the cooling liquid distribution unit; the first connecting frame is arranged on the side of the skid unit and used for being connected with a building wall. The second connecting frame is arranged in the skid unit and used for being connected with a building stand column. The first fastener is connected with the first connecting frame and the skid unit. The technical scheme can be connected to a building wall and a building stand column, connection with a floor is avoided, the risk of damage to a waterproof layer of the floor is reduced, the risk of water leakage of the liquid cooling machine room is completely eradicated, and later maintenance and overhaul of the machine room are facilitated.
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Description

Technical Field

[0001] This application relates to the field of data center technology, and more specifically, to a liquid-cooled IT container and a data center. Background Technology

[0002] With the development of the data center industry, more and more IT server rooms will adopt liquid cooling technology, which will bring liquid cooling facilities, including coolant pipes, into the secondary side of the liquid cooling system in IT module server rooms and liquid-cooled IT cabins. If traditional fixing methods are used in IT module server rooms, such as fixing pry bars to the floor slab with anchor bolts, this may damage the floor's waterproof layer. If the waterproof layer is damaged and the floor slab leaks, this is a risk that liquid-cooled IT server rooms cannot afford. Utility Model Content

[0003] This application provides a liquid-cooled IT container and data center that can be connected to building walls and columns, avoiding connection with the floor slab, reducing the risk of damage to the floor slab's waterproof layer, eliminating the risk of water leakage in the liquid-cooled server room, and facilitating the later maintenance and repair of the server room.

[0004] This application is achieved through the following technical solution:

[0005] In a first aspect, embodiments of this application provide a liquid-cooled IT cabin for installation in an IT server room. The liquid-cooled IT cabin includes a cabin body, a first connecting frame, a second connecting frame, and first fasteners. The cabin body includes a skid unit, a server rack, a cable tray, and a coolant distribution unit. The skid unit includes multiple interconnected skids for supporting the server rack, cable tray, and coolant distribution unit. The first connecting frame is disposed on the side of the skid unit for connection to a building wall. The second connecting frame is disposed inside the skid unit for connection to a building column. The first connecting frame includes multiple first frames and multiple first connectors. The first fasteners connect the first connecting frame and the skid unit. The number of first fasteners is multiple, with some first fasteners connecting the multiple first frames and the skid unit, and other first fasteners connecting the multiple first connectors and the skid unit.

[0006] According to the embodiments of this application, the liquid-cooled IT cabin has a first connecting frame and a second connecting frame integrated with the skid unit. Since the first connecting frame is located on the side of the skid unit and the second connecting frame is located inside the skid unit, and the first connecting frame is connected to the building wall and the second connecting frame is connected to the building column, the liquid-cooled IT cabin can be assembled with the building wall and building column of the IT server room building, avoiding connection with the floor slab, reducing the risk of damage to the waterproof layer of the floor slab, eliminating the risk of water leakage in the liquid-cooled server room, and facilitating the maintenance and repair of the server room in the future.

[0007] In one or more of the above optional embodiments, along the first direction, two adjacent skids abut against each other. The liquid-cooled IT mobile cabin further includes a second fastener, and the two adjacent skids are detachably connected by the second fastener. The first direction is perpendicular to the height direction. In the above solution, the second fastener connects two adjacent skids, which is convenient for operation, beneficial to on-site assembly, and convenient for maintenance and replacement.

[0008] In one or more of the above optional embodiments, a plurality of first frames are connected to the top of the side of the skid unit, and the plurality of first frames are spaced apart along the circumferential direction of the skid unit. Each first frame is in the shape of a Chinese character 'Ri'; the first frame is provided with a first through hole, and the skid is provided with a first mounting hole corresponding to the first through hole. The first fastener passes through the first through hole and is connected to the first mounting hole.

[0009] In the above solution, the plurality of first frames are located at the top of the side of the skid unit to facilitate the connection between the top of the skid unit and the building wall; the plurality of first frames are spaced apart along the circumferential direction of the skid unit, and the connection with the building wall can be realized at multiple positions in the circumferential direction of the skid unit. At the same time, the first frame is in the shape of a Chinese character 'Ri', and the first frame has relatively high overall strength, so that the connection between the cabin main body and the building wall is stable; the first fastener passes through the first through hole and is connected to the first mounting hole, which is convenient for the assembly and disassembly of the first connecting frame and the skid unit, and improves the assembly efficiency.

[0010] In one or more of the above optional embodiments, a plurality of first connectors are connected to the skids in the skid unit close to the building wall, and the plurality of first connectors are connected to the bottom of the side of the skid unit. The plurality of first connectors are spaced apart along the circumferential direction of the skid unit, and each first connector is used to connect the skid and the building wall.

[0011] In the above solution, the plurality of first connectors are arranged on the skids in the skid unit close to the building wall and are located at the bottom of the side of the skid unit. The plurality of first connectors are spaced apart along the circumferential direction of the skid unit, which can connect the bottom of the skid unit to the building wall, and there are multiple connection positions between the skid unit and the building wall, making the connection between the cabin main body and the building wall firm, avoiding the connection between the cabin main body and the floor slab, and thus reducing the risk of damage to the waterproof layer of the floor slab.

[0012] In one or more of the above optional embodiments, the first connector includes a first I-beam and a first end head. The first end head is arranged at the end of the first I-beam connected to the skid. The first end head is provided with a second through hole, and the skid is provided with a second mounting hole corresponding to the second through hole. The first fastener passes through the second through hole and is connected to the second mounting hole.

[0013] In the above scheme, the first end cap is set at the end of the first I-beam that is connected to the skid, which can increase the connection strength between the first I-beam and the skid, making the connection between the first I-beam and the skid firm; the first fastener passes through the second through hole and is connected to the second mounting hole, making the assembly of the first I-beam and the skid convenient and easy to disassemble.

[0014] In one or more of the above optional embodiments, the main body of the container also includes a cabinet base, a liquid-cooled primary side pipe, and a liquid-cooled primary side pipe base; the cabinet base and the skid unit are distributed along a first direction, and the cabinet base and the skid unit are connected by a first connector, and the cabinet base is used to connect with the building wall; the liquid-cooled primary side pipe is connected to the coolant distribution unit, the liquid-cooled primary side pipe is disposed on the liquid-cooled primary side pipe base, the liquid-cooled primary side pipe base is located to the side of the skid unit in a second direction, and the liquid-cooled primary side pipe base is connected to the skid unit and the cabinet base by a third fastener.

[0015] In the above scheme, the base of the cabinet and the skid unit are connected by a first connector to ensure a stable connection between the base of the cabinet and the first connector. The liquid-cooled primary side pipe base connects the skid unit and the base of the cabinet. The base of the cabinet is used to connect with the building wall to ensure that the main body of the container has high overall strength and that the main body of the container is firmly connected with the building wall.

[0016] In one or more of the above optional embodiments, the skid unit includes a plurality of skids spaced apart along a second direction, the second direction being perpendicular to the height direction; the main body of the container also includes a liquid-cooled secondary side pipe and a liquid-cooled secondary side pipe base, the liquid-cooled secondary side pipe being connected to the cabinet, a portion of the liquid-cooled secondary side pipe being disposed on the liquid-cooled secondary side pipe base, along the second direction, the liquid-cooled secondary side pipe base being disposed between two adjacent skids, and the liquid-cooled secondary side pipe base being connected to the skids by a fourth fastener.

[0017] In the above scheme, the liquid-cooled secondary side pipe base is set between two skids spaced apart along the second direction to facilitate the reasonable arrangement of the liquid-cooled secondary side pipes; the liquid-cooled secondary side pipe base and the skids are connected by a sixth fastener to facilitate the assembly and disassembly of the liquid-cooled secondary side pipe base and the skids.

[0018] In one or more of the above optional embodiments, the second connecting frame includes a plurality of second connectors, which are spaced apart along the height direction, and the opposite ends of each second connector are respectively connected to the skid unit.

[0019] In the above scheme, multiple second connectors are spaced apart along the height direction, and the multiple second connectors enable the pry bar unit to be connected to the building column at multiple positions in the height direction, thereby improving the connection stability between the pry bar unit and the building column.

[0020] In one or more of the above optional embodiments, the cabinet and the skid are connected by a fifth fastener. The cabinet is provided with a third through hole, and the skid is provided with a third mounting hole corresponding to the third through hole. The fifth fastener passes through the third through hole and is connected to the third mounting hole.

[0021] In the above solution, the skid and the cabinet are connected by a fifth fastener, which facilitates the assembly and disassembly of the skid and the cabinet, enables factory debugging, rapid on-site assembly, and reduces on-site workload.

[0022] Secondly, embodiments of this application also provide a data center, which includes a liquid-cooled IT container provided according to any of the above embodiments.

[0023] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description

[0024] To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0025] Figure 1 Top view of a liquid-cooled IT container provided for some embodiments of this application;

[0026] Figure 2 A perspective view of a portion of the structure of a liquid-cooled IT container provided in some embodiments of this application;

[0027] Figure 3 A schematic diagram illustrating the connection between the first connecting frame and the skid unit provided in some embodiments of this application;

[0028] Figure 4 for Figure 2 Enlarged view of a portion at point A;

[0029] Figure 5 A schematic diagram of the bottom connection of two adjacent skids provided in some embodiments of this application;

[0030] Figure 6 for Figure 2 A magnified view of section B;

[0031] Figure 7 for Figure 2 A magnified view of a portion at point C;

[0032] Figure 8 This is an assembly diagram of the cabinet and skid provided in some embodiments of this application;

[0033] Figure 9 for Figure 8 A magnified view of a portion at point D;

[0034] Figure 10 Perspective view of a partial structure of a liquid-cooled IT container provided for other embodiments of this application;

[0035] Figure 11 A top view of a portion of the structure of a liquid-cooled IT cabin provided in some embodiments of this application;

[0036] Figure 12 for Figure 11 A cross-sectional view along the EE direction;

[0037] Figure 13 for Figure 12 A magnified view of a portion at point F;

[0038] Figure 14 A schematic diagram of the assembly of the column cabinet base and the liquid-cooled primary side pipe base with the water baffle provided in some embodiments of this application;

[0039] Figure 15 for Figure 11 A cross-sectional view along the GG direction;

[0040] Figure 16 for Figure 15 A magnified view of section H in the image.

[0041] Icons: 100-Liquid-cooled IT container; 10-Container body; 11-Skid unit; 111-Skid; 12-Rack; 13-Chain cabinet base; 14-Liquid-cooled primary side pipe; 15-Liquid-cooled primary side pipe base; 16-Liquid-cooled secondary side pipe base; 161-Elongated hole; 20-First connecting frame; 21-First frame; 22-First connector; 221-First I-beam; 222-First end cap; 223-Second end cap; 30-Second connecting frame; 31-Second connector; 41-First fastener; 42-Second fastener; 43-Third fastener; 44-Fourth fastener; 45-Fifth fastener; 200-Building wall; 300-Building column; X-First direction; Y-Second direction; Z-Height direction. Detailed Implementation

[0042] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are some embodiments of this application, but not all embodiments.

[0043] Unless otherwise defined, all technical and scientific terms used in this application have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains; the terminology used in the description of this application is for the purpose of describing particular embodiments only and is not intended to limit the application; the terms "comprising" and "having," and any variations thereof, in the description, claims, and accompanying drawings of this application are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the description, claims, or accompanying drawings of this application are used to distinguish different objects, not to describe a specific order or hierarchy.

[0044] In this application, the reference to "embodiment" means that a specific feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a mutually exclusive, independent, or alternative embodiment. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described in this application can be combined with other embodiments.

[0045] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," and "attachment" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0046] In this application, the term "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. Additionally, in this application, the character " / " generally indicates that the preceding and following related objects have an "or" relationship.

[0047] In this application, "multiple" refers to two or more (including two), and similarly, "multiple groups" refers to two or more (including two), and "multiple pieces" refers to two or more (including two).

[0048] During the assembly of a data center, the components of a liquid-cooled IT cabin need to be assembled according to the actual site conditions. To ensure a stable connection between the liquid-cooled IT cabin and the building, holes are usually drilled in the building floor slab, and the liquid-cooled IT cabin is connected to the floor slab using anchor bolts. However, since the floor slab has a waterproof layer, drilling holes in the floor slab can easily damage the waterproof layer, resulting in poor waterproofing and potential water leakage, thus posing a safety hazard.

[0049] Based on the above background, this application provides a liquid-cooled IT cabin, which utilizes the steel structure of the skid itself to form the entire cabin body as a whole through the connecting frame, and connects it with the building's concrete columns, beams and walls without anchoring it to the floor slab, thereby meeting the requirements for seismic resistance and load-bearing capacity, and reducing the risk of damage to the floor slab's waterproof layer.

[0050] The structure of the liquid-cooled IT container of this application will be described below with reference to the accompanying drawings.

[0051] Please refer to Figures 1 to 3 , Figure 1 This is a top view of a liquid-cooled IT cabin provided in some embodiments of this application. Figure 2 This is a perspective view of a portion of the structure of a liquid-cooled IT container provided in some embodiments of this application. Figure 3 This is a schematic diagram illustrating the connection between the first connecting frame and the skid unit provided in some embodiments of this application. Embodiments of this application provide a liquid-cooled IT cabin 100 for installation in an IT server room. The liquid-cooled IT cabin 100 includes a cabin body 10, a first connecting frame 20, a second connecting frame 30, and a first fastener 41. The cabin body 10 includes a skid unit 11, a server rack 12, and a coolant distribution unit (CDU). The skid unit 11 includes multiple interconnected skids 111, which support the server rack 12 and the coolant distribution unit. The first connecting frame 20 is disposed on the side of the skid unit 11 for connection to a building wall 200. The second connecting frame 30 is disposed inside the skid unit 11 for connection to a building column 300. The first fastener 41 connects the first connecting frame 20 and the skid unit 11.

[0052] The skid unit 11 serves as the skeleton of the liquid-cooled IT container 100, providing an assembly basis for various components or equipment.

[0053] The multiple pry bars 111 in the pry bar unit 11 can be directly connected or indirectly connected through other components. The multiple pry bars 111 can be arranged along the first direction X, or along the second direction Y, or the multiple pry bars 111 can be arranged in a matrix along the first direction X and the second direction Y, with the first direction X, the second direction Y and the height direction Z being perpendicular to each other.

[0054] In some embodiments, the skid unit 11 is a steel structure, and the skid 111 unit has high strength.

[0055] The cabinet 12 may include liquid-cooled server cabinets, power distribution cabinets, etc., which include the cabinet body and the components installed inside the cabinet body.

[0056] The top of the skid 111 is also equipped with a cable tray, which is used to carry cables and facilitates cable routing.

[0057] When the main body 10 of the shelter is installed adjacent to the building wall 200, the first connecting frame 20 is located on the side of the skid unit 11. The first connecting frame 20 connects the skid unit 11 to the building wall 200, ensuring a stable connection between the skid unit 11 and the building. The first connecting frame 20 can be detachably connected to the skid unit 11 for easy factory testing and simple on-site assembly. Essentially, in the construction site, within the IT room, the first connecting frame 20 is positioned between the skid unit 11 and the building wall 200, securing the connection between them. For example, after the first connecting frame 20 is connected to the skid unit 11, expansion bolts can be used to connect the first connecting frame 20 to the building wall 200, ensuring a secure connection between the skid unit 11 and the building wall 200.

[0058] The first connecting frame 20 includes multiple first frames 21 and multiple first connectors 22. Depending on the location, the multiple first frames 21 and multiple first connectors 22 are connected to different locations of the building wall 200.

[0059] The first fastener 41 is a component used to connect the first connecting frame 20 and the skid unit 11. The first fastener 41 can be a bolt, screw, or other component to facilitate the assembly and disassembly of the first connecting frame 20 and the skid unit 11. There are multiple first fasteners 41. Some of the first fasteners 41 connect multiple first frames 21 and skid units 11, while other first fasteners 41 connect multiple first connectors 22 and skid units 11.

[0060] Inside the IT server room, due to the building's inherent characteristics, the building columns 300 are embedded within the main body 10 of the modular shelter. A second connecting frame 30 is positioned inside the skid unit 11, connecting the skid unit 11 to the building columns 300 to ensure a stable connection. The second connecting frame 30 can be flexibly installed on-site to accommodate manufacturing errors. For example, after the positions of the skid unit 11 and the building columns 300 are fixed, both ends of the second connecting frame 30 are fixedly connected to the skid unit 11, and expansion bolts are used to secure the second connecting frame 30 to the building columns 300, ensuring a stable connection between the skid unit 11 and the building columns 300.

[0061] According to the embodiment of this application, the liquid-cooled IT cabin 100 has a first connecting frame 20 and a second connecting frame 30 integrated with the skid unit 11. Since the first connecting frame 20 is located on the side of the skid unit 11 and the second connecting frame 30 is located inside the skid unit 11, and the first connecting frame 20 is connected to the building wall 200 and the second connecting frame 30 is connected to the building column 300, the liquid-cooled IT cabin 100 can be assembled with the building wall 200 and building column 300 of the IT server room building, avoiding connection with the floor slab, reducing the risk of damage to the waterproof layer of the floor slab, eliminating the risk of water leakage in the liquid-cooled server room, and facilitating the maintenance and repair of the server room in the future.

[0062] Please refer to Figure 2 and further refer to Figure 4 and Figure 5 , Figure 4 for Figure 2 A magnified view of part A. Figure 5 This is a schematic diagram of the bottom connection of two adjacent skids provided in some embodiments of this application. In some embodiments, two adjacent skids 111 abut against each other along the first direction X. The liquid-cooled IT container 100 also includes a second fastener 42, and the two adjacent skids 111 are detachably connected by the second fastener 42. The first direction X is perpendicular to the height direction Z.

[0063] Among the multiple pry bars 111, the pry bars 111 in the first direction X are arranged sequentially, and two adjacent pry bars 111 abut against each other, so that the pry bar unit 11 has a compact structure in the first direction X and occupies less space.

[0064] The second fastener 42 connects two adjacent pry bars 111 so that the two adjacent pry bars 111 can be detachably connected, which facilitates the factory debugging of the container body 10 and only requires simple connection on site, thereby improving on-site assembly efficiency and shortening the assembly cycle.

[0065] When two adjacent pry bars 111 are in direct contact along the first direction X, a connecting hole, such as a through hole, can be provided on the pry bar 111. A second fastener 42 is then inserted through the connecting hole of the two pry bars 111 to connect them. For example, the second fastener 42 can be a bolt. A through hole is provided on the two adjacent pry bars 111. The second fastener 42 is inserted through the through hole of the two pry bars 111 and locked with a nut to fix the two adjacent pry bars 111.

[0066] In some embodiments, along the second direction Y, when two adjacent pry bars 111 are spaced apart, the two adjacent pry bars 111 can be connected by a connecting beam. The connecting beam and the pry bar 111 can be connected by bolts. Through holes are provided on the connecting beam and the pry bar 111 respectively. Bolts are inserted through the through holes on the connecting beam and the pry bar 111 and locked by nuts so that the two adjacent pry bars 111 are fixed by the connecting beam.

[0067] Please refer to Figure 2 and Figure 4 , at the top of two adjacent skids 111, the second fastener 42 passes through the through holes on the frames of the two skids 111 and is locked with nuts to fix the two adjacent skids 111. For example, the beam forming the frame of the skid 111 is a hollow structure. Avoidance holes can be provided on the beam. Through holes are provided on the wall of the beam of one skid 111 that is connected to the adjacent skid 111. The avoidance hole exposes the through hole and facilitates the second fastener 42 to pass through the through hole. The second fastener 42 passes through the through holes of the two skids 111 and is threadedly connected with the nut to connect the two skids 111.

[0068] Please refer to Figure 2 and Figure 5 , at the bottom of two adjacent skids 111, the second fastener 42 passes through the through holes on the bases of the two skids 111 and is locked with nuts to fix the two adjacent skids 111. The base of the skid 111 includes a channel steel or an I-beam. The base has a receiving groove. A connecting plate is welded in the receiving groove. The connecting plate is provided with through holes. The second fastener 42 passes through the through holes on the connecting plates of the two skids 111 and is threadedly connected with the nut, thereby fixing the two adjacent skids 111.

[0069] Meanwhile, at the middle part of two adjacent skids 111, the second fastener 42 passes through the through holes of the frames of the two skids 111 and is locked with nuts to fix the two adjacent skids 111.

[0070] In the above solution, the second fastener 42 connects two adjacent skids 111, with convenient operation, which is beneficial for on-site assembly and is convenient for maintenance and replacement.

[0071] Please refer to Figure 1 and Figure 2 , in some embodiments, the first coupling frame 20 includes a plurality of first frames 21. The plurality of first frames 21 are connected to the top of the side of the skid unit 11, and the plurality of first frames 21 are spaced apart along the circumferential direction of the skid unit 11. Each first frame 21 is in a shape of a Chinese character 'Ri'; the first frame 21 is provided with a first through hole, and the skid 111 is provided with a first mounting hole corresponding to the first through hole. The first fastener 41 passes through the first through hole and is connected to the first mounting hole.

[0072] The first frame 21 is connected to the top of the side of the skid unit 11 to facilitate the connection between the top of the skid unit 11 and the building wall 200.

[0073] The skid unit 11 can be in the shape of a cuboid. A plurality of first frames 21 can be arranged between the skid unit 11 and the building wall 200, and the plurality of first frames 21 are arranged along the circumferential direction of the skid unit 11, so that there are a plurality of connection positions between the skid unit 11 and the building wall 200 along the circumferential direction of the skid unit 11. Moreover, the material used for the first frames 21 is less, which is convenient for reducing costs.

[0074] The first frame 21 is in the shape of a Chinese character 'Ri'. The first frame 21 has relatively high overall strength. When the skid unit 11 is connected to the building wall 200 through the first frame 21, the connection stability between the skid unit 11 and the building wall 200 can be improved, thereby improving the connection stability between the shelter main body 10 and the building wall 200.

[0075] A first through hole penetrates through the beam of the first frame 21 that is connected to the skid 111. The skid 111 is provided with a first mounting hole corresponding to the first through hole, so as to facilitate the first fastener 41 to be connected to the first mounting hole after passing through the first through hole. For example, the first fastener 41 can be a bolt, and the first mounting hole can be a threaded hole provided on the skid 111. The first fastener 41 passes through the first through hole and is connected to the first mounting hole. Or, the first mounting hole can be a through hole provided on the skid 111, and the first fastener 41 passes through the first through hole and then passes through the first mounting hole and is connected to a nut.

[0076] In other embodiments, the first fastener 41 can also be a fastener such as a pin.

[0077] In the above solution, a plurality of first frames 21 are located at the top of the side of the skid unit 11, so as to facilitate the connection between the top of the skid unit 11 and the building wall 200; the plurality of first frames 21 are spaced apart along the circumferential direction of the skid unit 11, and can achieve the connection with the building wall 200 at multiple positions in the circumferential direction of the skid unit 11. At the same time, the first frame 21 is in the shape of a Chinese character 'Ri' and has relatively high overall strength so that the connection between the shelter main body 10 and the building wall 200 is stable; the first fastener 41 passes through the first through hole and is connected to the first mounting hole, which is convenient for realizing the assembly and disassembly of the first connecting frame 20 and the skid unit 11 and improving the assembly efficiency.

[0078] Please refer to Figure 2 and further refer to Figure 6 Figure 6 For Figure 2 the partial enlarged view of B in. In some embodiments, the first connecting frame 20 further includes a plurality of first connectors 22. The plurality of first connectors 22 are connected to the skid 111 in the skid unit 11 that is close to the building wall 200, and the plurality of first connectors 22 are connected to the bottom of the side of the skid unit 11. The plurality of first connectors 22 are spaced apart along the circumferential direction of the skid unit 11, and each first connector 22 is used to connect the skid 111 and the building wall 200.​

[0079] The first connector 22 is located at the bottom side of the pry bar unit 11 to connect the bottom of the pry bar unit 11 to the building wall 200.

[0080] The first connector 22 can be regarded as a beam, and the first connector 22 is used to realize the connection between the pry bar 111 and the building wall 200.

[0081] In some embodiments, the building wall 200 may be located at the end of the skid unit 11 in the first direction X, and a plurality of first connectors 22 may be spaced apart along the second direction Y, wherein the first direction X, the second direction Y, and the height direction are perpendicular to each other. The plurality of first connectors 22 may be disposed at two ends of the skid unit 11 in the first direction X. The lengths of the first connectors 22 located at the two ends of the skid unit 11 in the first direction X may be the same or different, to accommodate the assembly space between the skid unit 11 and the building wall 200 in the first direction X.

[0082] In the above scheme, multiple first connectors 22 are connected to the pry bar 111 in the pry bar unit 11 near the building wall 200 and are located at the bottom side of the pry bar unit 11. The multiple first connectors 22 are arranged at intervals along the circumference of the pry bar unit 11, which can connect the bottom of the pry bar unit 11 to the building wall 200. The pry bar unit 11 and the building wall 200 have multiple connection positions, so that the main body of the cabin 10 is firmly connected to the building wall 200, avoiding the connection between the main body of the cabin 10 and the floor slab, thereby reducing the risk of damage to the floor slab waterproof layer.

[0083] Please refer to Figure 6 In some embodiments, the first connector 22 includes a first I-beam 221 and a first end cap 222. The first end cap 222 is disposed at the end of the first I-beam 221 that is connected to the pry bar 111. The first end cap 222 is provided with a second through hole. The pry bar 111 is provided with a second mounting hole corresponding to the second through hole. The first fastener 41 passes through the second through hole and is connected to the second mounting hole.

[0084] The first I-beam 221 has high strength, which makes the pry bar unit 11 firmly connected to the building wall 200.

[0085] The building wall 200 may include a water-retaining edge disposed on one side of the skid unit 11.

[0086] The first end cap 222 is welded to the first I-beam 221 to ensure a firm connection between the first end cap 222 and the first I-beam 221.

[0087] The first fastener 41 can be a bolt, and the second mounting hole can be a threaded hole provided in the pry bar 111. The first fastener 41 passes through the second through hole and is connected to the second mounting hole. Alternatively, the second mounting hole can be a through hole provided in the pry bar 111. The first fastener 41 passes through the second through hole and the second mounting hole and is connected to the nut to fix the first connector 22 to the pry bar 111, so that the connection between the first connector 22 and the pry bar 111 is stable.

[0088] The first connector 22 also includes a second end cap 223, which is located at the end of the first I-beam 221 near the building wall 200. The second end cap 223 is welded to the first I-beam 221 and has a through hole. The second end cap 223 can be fixed to the building wall 200 by an expansion bolt inserted into the through hole, so that the first connector 22 is firmly connected to the building wall 200, thereby making the main body 10 of the shelter firmly connected to the building wall 200.

[0089] In the above scheme, the first end cap 222 is provided at the end of the first I-beam 221 that is connected to the pry bar 111, which can increase the connection strength between the first I-beam 221 and the pry bar 111, making the connection between the first I-beam 221 and the pry bar 111 firm; the first fastener 41 passes through the second through hole and is connected to the second mounting hole, making the assembly of the first I-beam 221 and the pry bar 111 convenient and easy to disassemble.

[0090] Please refer to Figure 7 , Figure 7 for Figure 2 A partial enlarged view at point C. In some embodiments, the second connecting frame 30 includes a plurality of second connectors 31, which are spaced apart along the height direction, and the opposite ends of each second connector 31 are respectively connected to the skid unit 11.

[0091] In some embodiments, the second connector 31 can be a channel steel with high strength. The second connector 31 can be disposed in the hole of the building column 300 of the skid unit 11, and both ends of the second connector 31 are welded to the skid unit 11 to make the connection between the second connector 31 and the skid unit 11 stable.

[0092] In some embodiments, the second connector 31 is provided with a through hole, and the second connector 31 is fixed to the building column 300 by an expansion bolt passing through the through hole, so that the second connector 31 is firmly connected to the building column 300, thereby making the cabin body 10 firmly connected to the building column 300.

[0093] Multiple second connectors 31 can be arranged at equal intervals along the height direction so that the overall force of the multiple second connectors 31 and the skid unit 11 is balanced.

[0094] In the above scheme, multiple second connectors 31 are spaced apart along the height direction. Multiple second connectors 31 are used to connect the pry bar unit 11 and the building column 300 at multiple positions in the height direction, thereby improving the connection stability between the pry bar unit 11 and the building column 300.

[0095] Please refer to Figure 8 and Figure 9 , Figure 8 This is an assembly diagram of the cabinet and skid provided in some embodiments of this application. Figure 9 for Figure 8 A partial enlarged view of point D. In one or more of the above optional embodiments, the cabinet 12 and the skid 111 are connected by a fifth fastener 45. The cabinet 12 is provided with a third through hole, and the skid 111 is provided with a third mounting hole corresponding to the third through hole. The fifth fastener 45 passes through the third through hole and is connected to the third mounting hole.

[0096] The cabinet 12 can be installed within the frame of the skid unit 11. The cabinet 12 has a third through hole at multiple locations to facilitate the connection between the cabinet 12 and the skid 111 at multiple locations.

[0097] The third mounting hole is set to correspond to the third through hole so that the fifth fastener 45 can be inserted.

[0098] The fifth fastener 45 can be a bolt, and the third mounting hole can be a threaded hole provided in the pry bar 111. The fifth fastener 45 passes through the third through hole and is connected to the third mounting hole. Alternatively, the third mounting hole can be a through hole provided in the pry bar 111. The fifth fastener 45 passes through the third through hole and the third mounting hole and is connected to the nut to fix the cabinet 12 to the pry bar 111, so that the connection between the cabinet 12 and the pry bar 111 is stable.

[0099] In the above scheme, the skid 111 is connected to the cabinet 12 by the fifth fastener 45, which facilitates the assembly and disassembly of the skid 111 and the cabinet 12, and is conducive to factory debugging, rapid on-site assembly, and reduces on-site workload.

[0100] Please refer to Figures 10 to 13 , Figure 10 A perspective view of a portion of the structure of a liquid-cooled IT container provided in other embodiments of this application. Figure 11 This is a top view of a portion of the structure of a liquid-cooled IT cabin provided in some embodiments of this application. Figure 12 for Figure 11 A cross-sectional view along the EE direction. Figure 13 for Figure 12 A magnified view of a portion at point F.

[0101] In some embodiments, the main body 10 of the modular shelter also includes a cabinet base 13, which can be set against a wall, that is, the cabinet base 13 is connected to the building wall 200. The cabinet base 13 and the building wall 200 have a large connection area, so that the cabinet base 13 and the building wall 200 are stably connected. At the same time, a first connector 22 is set between the cabinet base 13 and the skid unit 11. The first connector 22 connects the cabinet base 13 and the skid unit 11, so that the main body 10 of the modular shelter can be stably connected to the building wall 200, which facilitates the assembly of the main body 10 of the modular shelter.

[0102] In some embodiments, the liquid-cooled IT container body 10 further includes a liquid-cooled primary side pipe 14 and a liquid-cooled primary side pipe base 15; a cabinet base 13 and a skid unit 11 are distributed along a first direction X, the cabinet base 13 and the skid unit 11 are connected by a first connector 22, and the cabinet base 13 is used to connect to the building wall 200; the liquid-cooled primary side pipe 14 is connected to a coolant distribution unit, the liquid-cooled primary side pipe 14 is disposed on the liquid-cooled primary side pipe base 15, the liquid-cooled primary side pipe base 15 is located to the side of the skid unit 11 in a second direction Y, and the liquid-cooled primary side pipe base 15 is connected to the skid unit 11 and the cabinet base 13 by a third fastener 43.

[0103] The cabinet base 13 is located on one side of the skid unit 11 in the first direction X, which can make reasonable use of the assembly space in the first direction X. At the same time, the cabinet base 13 has a large connection area with the building wall 200, and the connection between the cabinet base 13 and the building wall 200 is stable.

[0104] The liquid-cooled primary side pipe base 15 is located on the side of the skid unit 11 in the second direction Y. Both the liquid-cooled primary side pipe base 15 and the skid unit 11 are set on the building floor, which can make reasonable use of the assembly space and facilitate the layout of the liquid-cooled primary side pipe 14. At the same time, the liquid-cooled primary side pipe base 15 connects the skid unit 11 and the cabinet base 13, which can improve the overall strength of the container body 10.

[0105] In some embodiments, please refer to Figure 14 , Figure 14 This is a schematic diagram illustrating the assembly of the cabinet base and the liquid-cooled primary side pipe base with the water baffle provided in some embodiments of this application. The building wall 200 includes a water baffle 210 located at the bottom, and both the cabinet base 13 and the liquid-cooled primary side pipe base 15 are connected to the water baffle 210 of the building wall 200.

[0106] In some embodiments, the liquid-cooled primary-side pipe base 15 is provided with a fourth through hole, the skid unit 11 is provided with a fourth mounting hole corresponding to the fourth through hole, and the cabinet base 13 is provided with a fifth mounting hole corresponding to the fourth through hole. When the liquid-cooled primary-side pipe base 15 is connected to the skid unit 11, the third fastener 43 passes through the fourth through hole and connects to the fourth mounting hole. When the liquid-cooled primary-side pipe base 15 is connected to the cabinet base 13, the third fastener 43 passes through the fourth through hole and connects to the fifth mounting hole. For example, the third fastener 43 is a bolt, the fourth mounting hole is a threaded hole, and the third fastener 43 passes through the fourth through hole and connects to the fourth mounting hole by thread. Alternatively, the fourth mounting hole is a through hole, and the third fastener 43 passes through the fourth through hole and the fourth mounting hole and connects to a nut. Another example: the third fastener 43 is a bolt, the fifth mounting hole is a threaded hole, and the third fastener 43 passes through the fourth through hole and connects to the fifth mounting hole by thread. Alternatively, the fifth mounting hole is a through hole, and the third fastener 43 passes through the fourth through hole and the fifth mounting hole and connects to a nut.

[0107] In the above scheme, the cabinet base 13 and the skid unit 11 are connected by the first connector 22 to make the connection between the cabinet base 13 and the first connector 22 stable. The liquid cooling primary side pipe base 15 connects the skid unit 11 and the cabinet base 13. The cabinet base 13 is used to connect with the building wall 200 to make the main body of the container 10 have high overall strength and the main body of the container 10 is firmly connected with the building wall 200.

[0108] Please refer to Figure 10 and Figure 11 and further refer to Figure 15 and Figure 16 , Figure 15 for Figure 11 A cross-sectional view along the GG direction. Figure 16 for Figure 15 A partial enlarged view of point H in the diagram. In one or more of the above optional embodiments, the skid unit 11 includes a plurality of skids 111 spaced apart along the second direction Y; the container body 10 also includes a liquid-cooled secondary side pipe and a liquid-cooled secondary side pipe base 16, the liquid-cooled secondary side pipe is connected to the cabinet 12, at least a portion of the liquid-cooled secondary side pipe is disposed on the liquid-cooled secondary side pipe base 16, along the second direction Y, the liquid-cooled secondary side pipe base 16 is disposed between two adjacent skids 111, and the liquid-cooled secondary side pipe base 16 and the skids 111 are connected by a fourth fastener 44.

[0109] When an IT server room has a large number of server racks 12 due to demand, the multiple server racks 12 are arranged along the first direction X and also along the second direction Y. Therefore, the skid unit 11 includes multiple skids 111 arranged along the first direction X and multiple skids 111 arranged along the second direction Y. In the first direction X, the multiple skids 111 can be connected to each other; in the second direction Y, the multiple skids 111 can be spaced apart to facilitate the placement of other components between two adjacent skids 111.

[0110] Along the second direction Y, multiple skids 111 are spaced apart, allowing for the creation of ventilation or maintenance channels between adjacent skids 111; the liquid-cooled secondary side pipe base 16 is positioned between two skids 111 spaced apart along the second direction Y, and is located at the bottom side of the skids 111, allowing for the provision of space above the liquid-cooled secondary side pipe base 16 for the creation of ventilation or maintenance channels.

[0111] The skid 111 is provided with a sixth mounting hole, and the liquid-cooled secondary side pipe base 16 can be provided with an elongated hole 161 corresponding to the sixth mounting hole. The elongated hole 161 is a through hole extending along the second direction Y, and the length direction of the elongated hole 161 is parallel to the first direction X. The fourth fastener 44 passes through the elongated hole 161 and connects to the sixth mounting hole to fix the liquid-cooled secondary side pipe base 16 to the skid unit 11. For example, the fourth fastener 44 can be a bolt, and the sixth mounting hole can be a threaded hole provided in the skid 111. The fourth fastener 44 passes through the elongated hole 161 and connects to the sixth mounting hole. Alternatively, the sixth mounting hole can be a through hole provided in the skid 111, and the fourth fastener 44 passes through the elongated hole 161 and the sixth mounting hole and connects to a nut to fix the liquid-cooled secondary side pipe base 16 to the skid 111, so that the connection between the liquid-cooled secondary side pipe base 16 and the skid unit 11 is stable.

[0112] In the above scheme, the liquid-cooled secondary side pipe base 16 is disposed between two skids 111 spaced apart along the second direction Y, so as to facilitate the reasonable arrangement of the liquid-cooled secondary side pipe; the liquid-cooled secondary side pipe base 16 and the skids 111 are connected by a sixth fastener, which facilitates the assembly and disassembly of the liquid-cooled secondary side pipe base 16 and the skids 111.

[0113] According to some embodiments of this application, an embodiment of this application provides a data center that includes a liquid-cooled IT container 100.

[0114] Although this application has been described with reference to preferred embodiments, various modifications can be made thereto and components can be replaced with equivalents without departing from the scope of this application. In particular, the technical features mentioned in the various embodiments can be combined in any manner, provided there is no structural conflict. This application is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. A liquid-cooled IT container for installation in an IT server room, characterized in that, Comprising: The cabin main body, including a skid unit, a cabinet and a coolant distribution unit, wherein the skid unit includes a plurality of interconnected skids for carrying the cabinet and the coolant distribution unit; A first connecting frame disposed on the side of the skid unit for connecting to a building wall; A second connecting frame disposed inside the skid unit for connecting to a building column; The first connecting frame includes a plurality of first frames and a plurality of first connectors; A first fastener connecting the first connecting frame and the skid unit, wherein the number of the first fasteners is plural, and a part of the plurality of first fasteners connects the plurality of first frames and the skid unit, and another part of the plurality of first fasteners connects the plurality of first connectors and the skid unit.

2. The liquid-cooled IT container according to claim 1, characterized in that, Along a first direction, two adjacent skids abut against each other, and the liquid-cooled IT cabin further includes a second fastener, and the two adjacent skids are detachably connected by the second fastener, and the first direction is perpendicular to the height direction.

3. The liquid-cooled IT container according to claim 1, characterized in that, The plurality of first frames are connected to the top of the side of the skid unit, and the plurality of first frames are spaced apart along the circumferential direction of the skid unit, and each first frame is in a "day" shape; The first frame is provided with a first through hole, and the skid is provided with a first mounting hole corresponding to the first through hole, and the first fastener passes through the first through hole and is connected to the first mounting hole.

4. The liquid-cooled IT container according to claim 1, characterized in that, The plurality of first connectors are connected to the skid in the skid unit close to the building wall, and the plurality of first connectors are connected to the bottom of the side of the skid unit, and the plurality of first connectors are spaced apart along the circumferential direction of the skid unit, and each first connector is used to connect the skid and the building wall.

5. The liquid-cooled IT container according to claim 4, characterized in that, The first connector includes a first I-beam and a first end head, the first end head is disposed at the end of the first I-beam connected to the skid, the first end head is provided with a second through hole, and the skid is provided with a second mounting hole corresponding to the second through hole, and the first fastener passes through the second through hole and is connected to the second mounting hole.

6. The liquid-cooled IT container according to claim 4, characterized in that, The cabin main body further includes a row head cabinet base, a liquid-cooled primary side pipeline and a liquid-cooled primary side pipeline base; The row head cabinet base and the skid unit are distributed along a first direction, the row head cabinet base and the skid unit are connected by the first connector, and the row head cabinet base is used to connect to a building wall; The liquid-cooled primary side pipeline is connected to the coolant distribution unit, the liquid-cooled primary side pipeline is disposed on the liquid-cooled primary side pipeline base, the liquid-cooled primary side pipeline base is located on the side of the skid unit in a second direction, and the liquid-cooled primary side pipeline base is connected to the skid unit and the row head cabinet base by a third fastener, and the first direction, the second direction and the height direction are perpendicular to each other in pairs.

7. The liquid-cooled IT container according to claim 1, characterized in that, The skid unit includes a plurality of skids spaced apart along a second direction, and the second direction is perpendicular to the height direction; The main body of the container also includes a liquid-cooled secondary side pipe and a liquid-cooled secondary side pipe base. The liquid-cooled secondary side pipe is connected to the cabinet. At least a portion of the liquid-cooled secondary side pipe is disposed on the liquid-cooled secondary side pipe base. Along the second direction, the liquid-cooled secondary side pipe base is disposed between two adjacent skids. The liquid-cooled secondary side pipe base and the skids are connected by a fourth fastener.

8. The liquid-cooled IT container according to claim 1, characterized in that, The second connecting frame includes a plurality of second connectors, which are spaced apart along the height direction, and the opposite ends of each second connector are respectively connected to the skid unit.

9. The liquid-cooled IT container according to claim 1, characterized in that, The cabinet and the skid are connected by a fifth fastener. The cabinet is provided with a third through hole, and the skid is provided with a third mounting hole corresponding to the third through hole. The fifth fastener passes through the third through hole and is connected to the third mounting hole.

10. A data center, characterized in that, Including the liquid-cooled IT container as described in any one of claims 1-9.